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Updated: Jan 28, 2026

Quantifying Subcellular Ubiquitin-proteasome Activity in the Rodent Brain
Published on: May 21, 2019
Phosphorylation at distinct subcellular locations underlies specificity in mTORC2-mediated activation of SGK1 and Akt
Catherine E Gleason1, Juan A Oses-Prieto2, Kathy H Li2
1Department of Medicine, Division of Nephrology, UCSF, San Francisco, CA 94143, USA catie@circlepharma.com.
Abstract:
mTORC2 lies at the intersection of signaling pathways that control metabolism and ion transport through phosphorylation of the AGC-family kinases, the Akt and SGK1 proteins. How mTORC2 targets these functionally distinct downstream effectors in a context-specific manner is not known. Here, we show that the salt- and blood pressure-regulatory hormone, angiotensin II (AngII) stimulates selective mTORC2-dependent phosphorylation of SGK1 (S422) but not Akt (S473 and equivalent sites). Conventional PKC (cPKC), a critical mediator of the angiotensin type I receptor (AT1R, also known as AGTR1) signaling, regulates the subcellular localization of SIN1 (also known as MAPKAP1) and SGK1. Inhibition of cPKC catalytic activity disturbs SIN1 and SGK1 subcellular localization, re-localizing them from the nucleus and a perinuclear compartment to the plasma membrane in advance of hormonal stimulation. Surprisingly, pre-targeting of SIN1 and SGK1 to the plasma membrane prevents SGK1 S422 but not Akt S473 phosphorylation. Additionally, we identify three sites on SIN1 (S128, S315 and S356) that are phosphorylated in response to cPKC activation. Collectively, these data demonstrate that SGK1 activation occurs at a distinct subcellular compartment from that of Akt and suggests a mechanism for the selective activation of these functionally distinct mTORC2 targets through subcellular partitioning of mTORC2 activity.
Insights
Angiotensin II selectively activates SGK1, not Akt, via mTORC2 signaling. This selectivity is achieved by regulating protein location, suggesting compartmentalized mTORC2 activity controls distinct cellular functions.
Area of Science:
- Cellular signaling and molecular biology
- Physiology and endocrinology
Background:
- The mTORC2 complex integrates signaling pathways crucial for metabolism and ion transport.
- Understanding how mTORC2 selectively phosphorylates distinct downstream targets like Akt and SGK1 is essential.
Purpose of the Study:
- To investigate the mechanism behind selective mTORC2-mediated phosphorylation of SGK1 versus Akt.
- To elucidate the role of conventional PKC (cPKC) in regulating mTORC2 target localization and activation.
Main Methods:
- Utilized angiotensin II (AngII) stimulation in cellular models.
- Investigated the subcellular localization of SIN1 and SGK1 using cPKC inhibition.
- Analyzed phosphorylation sites on SIN1 and its downstream targets.
Main Results:
- AngII selectively stimulates SGK1 phosphorylation (S422) but not Akt (S473) in an mTORC2-dependent manner.
- cPKC activity regulates the nuclear and perinuclear localization of SIN1 and SGK1.
- Pre-targeting SIN1 and SGK1 to the plasma membrane inhibits SGK1 S422 phosphorylation, while Akt S473 phosphorylation remains unaffected.
- Identified three novel cPKC phosphorylation sites on SIN1 (S128, S315, S356).
Conclusions:
- SGK1 activation by mTORC2 occurs in a distinct subcellular compartment compared to Akt.
- Subcellular compartmentalization of mTORC2 activity provides a mechanism for selective activation of its distinct targets.
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